Job Description
1.Bachelor Degree in an engineering related field with 2 years experience in project management 2.Willingness to travel oversea extensively and repeatedly to participate in companys internal training. 3.Demonstrable professional proficiency in: AutoCAD, SolidWorks, EPLAN, and QElectro Tech 1. Apply Company Internal Proprietary LFP Electrical-Design Logic, Company Internal Proprietary Energy-Efficiency Patents, and Company Internal Proprietary Explosion-Proof Electrical Layout Technology to design the medium- and low-voltage power systems used in large-scale lithium iron phosphate manufacturing facilities. The beneficiarys specialized knowledge includes Company Internals plant-load characteristics, hazardous-area protection requirements, equipment operating sequences, transformer-capacity methodology, and power-reliability standards developed through prior LFP-facility projects. This knowledge changes the electrical work by requiring customized load forecasting, transformer sizing, short-circuit calculations, voltage-drop analysis, harmonic mitigation, grounding design, selective protection coordination, and redundancy planning that differ substantially from conventional industrial-building designs. Prepare single-line diagrams, electrical layouts, cable schedules, load calculations, protection-setting studies, and construction drawings using AutoCAD, EPLAN, QElectroTech, and SolidWorks. The resulting systems will provide safe, efficient, and reliable electrical service while reducing unnecessary transformer, switchgear, and distribution capacity. 2. Integrate electrical and automation systems with Company Internal Metal-Ion Bulk-Phase Doping Technology, Company Internal High-Molecular Composite Carbon-Source Technology, Company Internal Grain-Size Control Technology, Company Internal Nano-Preparation Technology, Company Internal Carbon-Coating Network Construction Technology, Company Internal Intelligent Spray-Granulation Technology, and Company Internal Controllable High-Temperature Sintering Technology. The beneficiarys specialized knowledge includes the electrical loads, temperature-control requirements, process interlocks, motor sequences, alarm logic, instrumentation requirements, and fail-safe conditions associated with Company Internals LFP manufacturing processes. This knowledge changes the electrical work by requiring power distribution, motor-control centers, variable-frequency drives, sensors, control panels, emergency-shutdown functions, and production interlocks to be engineered around Company Internals specific process parameters rather than standard equipment configurations. Develop control schematics, equipment-interface drawings, electrical specifications, interlock matrices, instrument lists, and panel layouts using AutoCAD, EPLAN, QElectroTech, and SolidWorks. The integration will maintain stable process conditions, protect specialized production equipment, reduce operating interruptions, and support consistent LFP product quality. 3.Implement Company Internal Spray Heat-Energy Recovery Technology, Company Internal Industrial-Motor Energy-Saving Technology, Company Internal Energy-Saving Automatic Control System for Circulating Water Pumps, and Company Internal Air-Compressor Energy-Saving Technology throughout the manufacturing facility. The beneficiarys specialized knowledge includes Company Internals demand-based equipment-staging methods, motor-efficiency standards, pressure and flow control logic, variable-frequency-drive strategies, energy-metering arrangements, and load-shedding priorities. This knowledge changes the electrical work by requiring utility systems to be designed and programmed according to actual production demand, rather than operating pumps, motors, compressors, and ventilation equipment continuously at fixed capacity. Prepare energy-consumption calculations, control narratives, motor schedules, variable-frequency-drive specifications, utility-control diagrams, metering plans, and performance reports using AutoCAD, EPLAN, QElectroTech, SolidWorks, and Microsoft Excel. These methods will reduce electrical consumption, improve equipment loading, recover usable process heat, lower operating costs, and maintain stable cooling-water, compressed-air, ventilation, and production-utility performance. 4. Apply Company Internal Proprietary Electrical Construction Standards, Company Internal Proprietary Commissioning Methods, and Company Internal Proprietary Explosion-Proof Electrical Layout Technology during installation and startup of the facilitys 10kV and low-voltage electrical systems. The beneficiarys specialized knowledge includes Company Internals approved equipment configurations, cable-routing requirements, protection settings, bus-tie arrangements, temperature-control interlocks, energization procedures, and acceptance criteria for LFP manufacturing facilities. This knowledge changes the electrical work by enabling the beneficiary to identify design deviations, unsafe clearances, incorrect cable terminations, insulation deficiencies, harmonic problems, routing conflicts, equipment-interface failures, and control-system errors before they affect production. Review construction drawings, as-built diagrams, test records, protection-setting reports, commissioning checklists, and troubleshooting analyses using AutoCAD, EPLAN, QElectroTech, SolidWorks, and Microsoft Excel. The work will ensure compliance with approved specifications and applicable safety requirements, shorten commissioning schedules, reduce corrective-work costs, and prevent electrical failures that could delay factory startup. 5. Integrate electrical and control systems supporting Company Internal Wastewater Concentration and Purification Technology, Company Internal MVR Mechanical-Evaporation Technology, and Company Internals plant utility systems. The beneficiarys specialized knowledge includes Company Internals required operating sequences for pumps, compressors, evaporators, filtration equipment, dosing systems, circulating-water equipment, compressed-air systems, and wastewater-recycling units. This knowledge changes the electrical work by requiring motor loads, starting currents, variable-frequency drives, standby configurations, instrumentation, alarm functions, and control sequences to be coordinated with wastewater-treatment and utility-process requirements. Prepare motor-control diagrams, load schedules, equipment-sequencing narratives, instrument lists, cable schedules, control-panel drawings, and electrical specifications using AutoCAD, EPLAN, QElectroTech, SolidWorks, and Microsoft Excel. The completed integration will maintain stable utility service, improve water and energy efficiency, prevent unplanned equipment shutdowns, and support reliable wastewater treatment and recycling operations. 6. Apply Company Internal Proprietary Electrical Design Standards, Company Internal Proprietary Energy-Efficiency Methods, and Company Internal Proprietary LFP Process-Integration Procedures to standardize electrical engineering work and transfer company-specific knowledge to project personnel. The beneficiarys specialized knowledge includes the design assumptions, calculation methods, equipment-selection criteria, control logic, construction practices, commissioning procedures, and troubleshooting methods developed through Company Internals prior LFP manufacturing projects. This knowledge changes the electrical work by allowing project engineers, technicians, contractors, and operations personnel to follow Company Internal-specific requirements instead of relying solely on general electrical-engineering practices. Prepare design specifications, calculation packages, equipment lists, technical reports, construction drawings, operating manuals, commissioning records, training materials, as-built documentation, and lessons-learned reports using AutoCAD, EPLAN, QElectroTech, SolidWorks, Microsoft Word, Microsoft Excel, and Microsoft PowerPoint. The documentation and training will preserve Company Internals institutional knowledge, improve consistency among project teams, accelerate problem resolution, support future facility replication, and reduce dependence on repeated trial-and-error engineering.